Browse by Journals
Number of items: 9.
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    CERMINARA, Adriano, NAYAK, Raahil, POTTS, Jonathan, TANNO, Hideyuki, KLOKER, Markus, SAIKIA, Bijaylakshmi, CHRISTOPH, Brehm, CAMILLO, Giannino Ponchio and WAGNER, Alexander
  
(2025).
    Transpiration Cooling in Hypersonic Flow and Mutual Effect on Turbulent Transition and Cooling Performance.
  
    Physics of Fluids, 37: 026139.
  
  
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    CHODE, K.K., VISWANATHAN, Harish, CHOW, K. and REESE, H.
  
(2023).
    Investigating the aerodynamic drag and noise characteristics of a standard squareback vehicle with inclined side-view mirror configurations using a hybrid computational aeroacoustics (CAA) approach.
  
    Physics of Fluids, 35 (7).
  
  
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    CHODE, Kushal, VISWANATHAN, Harish and CHOW, Kevin
  
(2021).
    Noise emitted from a generic side-view mirror with different aspect ratios and inclinations.
  
    Physics of Fluids, 33 (8).
  
  
[Article]
    
  
    
    
    CUI, Xinjun
  
(2021).
    Strong oblique shock waves in granular free-surface flows.
  
    Physics of Fluids, 33 (8), 083302-083302.
  
  
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    CUI, Xinjun, HARRIS, Matthew, HOWARTH, Martin, ZEALEY, Daisy, BROWN, Reegan and SHEPHERD, Jonny
  
(2022).
    Granular flow around a cylindrical obstacle in an inclined chute.
  
    Physics of Fluids, 34 (9): 093308.
  
  
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    NAHAR, Samsun, DUBEY, Bipro and WINDHAB, Erich J.
  
(2019).
    Influence of flowing fluid property through an elastic tube on various deformations along the tube length.
  
    Physics of Fluids, 31 (10).
  
  
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    SINCLAIR, J and CUI, Xinjun
  
(2017).
    A theoretical approximation of the shock stand-off distance for the flows around a circular cylinder.
  
    Physics of Fluids, 29, 026102.
  
  
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    SPENDLOVE, James, XU, Xu, SCHENKEL, Torsten, SEATON, Michael, HALLIDAY, Ian and GUNN, Julian
  
(2021).
    Three-dimensional single framework multi-component lattice Boltzmann equation method for vesicle hydrodynamics.
  
    Physics of Fluids, 33 (7), 077110.
  
  
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    XUE, Kuiju, LI, Qinling and ZHAO, Liangyu
  
(2024).
    Compressibility effect on flow characteristics over a circular cylinder at Reynolds number of 3900.
  
    Physics of Fluids, 36 (8): 085165.
  
  
[Article]
    
  


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